Using multiphase fluid-flow modeling and time-lapse electromagnetics to improve 4D monitoring of CO2 in an EOR reservoir
Author:
Affiliation:
1. GroundMetrics, Inc.
2. Lawrence Berkeley National Laboratory
Publisher
Society of Exploration Geophysicists
Link
https://library.seg.org/doi/pdf/10.1190/segam2018-2995730.1
Reference7 articles.
1. Haber, E., and E. Holtham, 2013, Enhanced Reservoir Modeling using Coupled Electromagnetics and Flow Modeling: ASEG-PESA 23rd International Geophysical Conference and Exhibition.
2. Reservoir property mapping and monitoring from joint inversion of time-lapse seismic, electromagnetic, and production data
3. MacLennan, K., P. Anderson, T. Richards, G. Nieuwenhuis, V. Ramadoss, and M. Wilkinson, 2016, Using Depth to the Surface Resistivity for Mapping CO2: 86th Annual International Meeting, SEG, Expanded Abstracts, 2941–2945, 10.1190/segam2016-13961173.1.
4. Nieuwenhuis, G., K. MacLennan, M. Wilt, and V. Ramadoss, 2016, Mapping CO2 floods using the depth to surface resistivity method: A technology and field example: 20th Annual SPE Improved Oil Recovery Conference, Tulsa, OK, SPE-179588-MS.
5. TOGA: A TOUGH code for modeling three-phase, multi-component, and non-isothermal processes involved in CO2-based Enhanced Oil Recovery
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1. Monitoring CO2 storage using well-casing source electromagnetics;The Leading Edge;2022-02
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